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Articles

The role of potassium solubilizing bacteria (KSB) inoculations on grain yield, dry matter remobilization and translocation in rice (Oryza sativa L.)

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Pages 1165-1179 | Received 08 May 2018, Accepted 23 Jun 2018, Published online: 13 May 2019

References

  • Akinwale, M. G., G. Gregorio, F. Nwilene, B. O. Akinyele, S. A. Ogunbayo, and A. C. Odiyi. 2011. Heritability and correlation coefficient analysis for yield and its components in rice (Oryza sativa L.). African Journal of Plant Science 5 (3):207–12.
  • Bahadur, I., V. S. Meena, and S. Kumar. 2014. Importance and application of potassic biofertilizer in Indian agriculture. International Research Journal of Biological Science 3 (12):80–5.
  • Bahadur, I., B. R. Maurya, A. Kumar, V. S. Meena, and R. Raghuwanshi. 2016. Towards the soil sustainability and potassium-solubilizing microorganisms. In Potassium solubilizing microorganisms for sustainable agriculture, eds. V. Meena, B. Maurya, J. Verma, and R. Meena. New Delhi, India: Springer.
  • Bakhshandeh, E., A. Soltani, E. Zeinali E, and R. Ghadiryan. 2013. Study of dry matter and nitrogen accumulation, remobilization and harvest index in bread and durum wheat cultivars. Electronic Journal of Crop Production 6 (1):49–69. (In Persian)
  • Bakhshandeh, E., H. Rahimian, H. Pirdashti, and G. A. Nematzadeh. 2015. Evaluation of phosphate-solubilizing bacteria on the growth and grain yield of rice (Oryza sativa L.) cropped in northern Iran. Journal of Applied Microbiology 119 (5):1371–82. doi: 10.1111/jam.12938.
  • Bakhshandeh, E., H. Pirdashti, and K. Shahsavarpour Lendeh. 2017a. Phosphate and potassium-solubilizing bacteria effect on the growth of rice. Ecological Engineering 103:164–9. doi: 10.1016/j.ecoleng.2017.03.008.
  • Bakhshandeh, E., H. Pirdashti, and Z. Gilani. 2017b. Application of mathematical models to describe rice growth and nutrients uptake in the presence of plant growth promoting microorganisms. Applied Soil Ecology 124:171–84. doi: 10.1016/j.apsoil.2017.10.040.
  • Balandreau, J. 2002. The spermosphere model to select for plant growth promoting rhizobacteria. In Biofertilizers in action, eds. I. R. Kennedy, and A. T. M. A. Choudhury, 55–63. Canberra, Australia: Rural Industries Research and Development Corporation.
  • Bergottini, V. M., M. B. Otegui, A. Sosa, P. D. Zapata, M. Mulot, M. Rebord, J. Zopfi, F. Wiss, B. Benrey, and P. Junier. 2015. Bio-inoculation of yerba mate seedlings (Ilex paraguariensis St. Hill.) with native plant growth-promoting rhizobacteria: A sustainable alternative to improve crop yield. Biology and Fertility of Soils 51 (6):749–55. doi: 10.1007/s00374-015-1012-5.
  • Bhiah, K. M., C. Guppy, P. Lockwood, and R. Jessop. 2010. Effect of potassium on rice lodging under high nitrogen nutrition. Paper presented at the 19th World Congress of Soil Science, Soil Solutions for a Changing World, Brisbane, Australia, August 1–6.
  • Blanco, M. 2011. Supply of and access to key nutrients NPK for fertilizers for feeding the world in 2050. Etsia Agronomos, Universidad Politécnica de Madrid, p. 39.
  • Chandra, K., S. R. Ingle, and K. Bihari. 2002. Biofertilizers and its impact on different crops. Paper presented at the National Seminar on Biotechnology: Microbes to Man, March 30–31, School of Life Science, Utkal University, Bhubaneswar, Orissa, India, pp. 18–19.
  • Chattopadhyay, K., S. R. Kuanar, A. Ray, and R. K. Sarkar. 2017. Physiological basis of stagnant flooding tolerance in rice. Rice Science 24 (2):73–84. doi: 10.1016/j.rsci.2016.08.008.
  • Cong, P. T., T. D. Dung, T. M. Hien, N. T. Hien, A. T. Choudhury, M. L. Kecskés, and I. R. Kennedy. 2009. Inoculant plant growth promoting microorganisms enhance utilization of urea-N and grain yield of paddy rice in southern Vietnam. European Journal of Soil Biology 45 (1):52–61. doi: 10.1016/j.ejsobi.2008.06.006.
  • De Souza, R., A. Ambrosini, and L. M. P. Passaglia. 2015. Plant growth-promoting bacteria as inoculants in agricultural soils. Genetics and Molecular Biology 38 (4):401–19. doi: 10.1590/S1415-475738420150053.
  • Dębska, B., J. Długosz, A. Piotrowska-Długosz, and M. Banach-Szott. 2016. The impact of a bio-fertilizer on the soil organic matter status and carbon sequestration results from a field-scale study. Journal of Soils and Sediments 16 (10):2335–45. doi: 10.1007/s11368-016-1430-5.
  • Ebrahimi-Chamani, H., E. Yasari, and H. Pirdashti. 2015. The response of yield and yield components of rice (Oryza sativa L. cv. Shiroodi) to different phosphate solubilizing microorganisms and mineral phosphorus. International Journal of Biosciences 6:70–5.
  • Fageria, N. K., A. D. Dos Santos, and A. M. Coelho. 2011. Growth, yield and yield components of lowland rice as influenced by ammonium sulphate and urea fertilization. Journal of Plant Nutrition 34 (3):371–86. doi: 10.1080/01904167.2011.536879.
  • FAO. 2016. Rice market monitor. FAO 19 (3):1–38. http://www.fao.org/economic/RMM.
  • Gebreslassie, H. B. 2016. Effect of potassium fertilizer on crop production. Journal of Natural Sciences Research 6 (7):81–6.
  • Gunasekaran, M., N. Nadarajan, and S. Netaji. 2010. Character association and path analysis in inter-racial hybrids in rice (Oryza Sativa L.). Electronic Journal of Plant Breeding 1 (2):956–60.
  • Hossain, M. F., S. K. White, S. F. Elahi, N. Sultana, M. H. K. Choudhury, Q. K. Alam, J. A. Rother, and J. L. Gaunt. 2005. The efficiency of nitrogen fertilizer for rice in Bangladeshi farmers’ fields. Field Crops Research 93 (1):94–107. doi: 10.1016/j.fcr.2004.09.017.
  • Isawa, T., M. Yasuda, H. Awazaki, K. Minamisawa, S. Shinozaki, and H. Nakashita. 2010. Azospirillum sp. strain B510 enhances rice growth and yield. Microbes Environ 25 (1):58–61.
  • Kasai, M. 2008. Regulation of leaf photosynthetic rate correlating with leaf carbohydrate status and activation state of Rubisco under a variety of photosynthetic source/sink balances. Physiologia Plantarum 134 (1):216–26. doi: 10.1111/j.1399-3054.2008.01105.x.
  • Khan, A. S., M. Imran, and M. Ashfaq. 2009. Estimation of genetic variability and correlation for grain yield components in rice (Oryza sativa L.). American-Eurasian Journal of Agricultural & Environmental Science 6 (5):585–90.
  • Khan, M. A., E. Haque, N. C. Paul, A. Khaleque, S. M. S. Al-Garni, M. Rahman, and T. Islam. 2017. Enhancement of growth and grain yield of rice in nutrient deficient soils by rice probiotic bacteria. Rice Science 24 (5):264–73. doi: 10.1016/j.rsci.2017.02.002.
  • Krishna, K. R. 2014. Agroecosystems: Soils, climate, crops, nutrient dynamics and productivity. Waretown, NJ: Apple Academic Press, Inc.
  • Kumar, A., I. Bahadur, B. R. Maurya, R. Raghuwanshi, V. S. Meena, D. K. Singh, and J. Dixit. 2015. Does a plant growth-promoting rhizobacteria enhance agricultural sustainability? Journal of Pure and Applied Microbiology 9:715–24.
  • Kumar, A., V. S. Meena, B. R. Maurya, R. Raghuwanshi, J. K. Bisht, and A. Pattanayak. 2017. Towards the biological nitrogen fixation and nitrogen management in legume under sustainable agriculture. Applied Soil Ecology 117–118:221–2. doi: 10.1016/j.apsoil.2017.05.013.
  • Li, H. B., R. K. Singh, P. Singh, Q. Q. Song, Y. X. Xing, L. T. Yang, and Y. R. Li. 2017. Genetic diversity of nitrogen-fixing and plant growth promoting Pseudomonas species isolated from sugarcane rhizosphere. Frontiers in Microbiology 8:1268. doi: 10.3389/fmicb.2017.01268.
  • Liu, Y., J. Xu, Y. Ding, Q. Wang, G. Li, and S. Wang. 2011. Auxin inhibits the outgrowth of tiller buds in rice (Oryza sativa L.) by down regulating OsIPT expression and cytokinin biosynthesis in nodes. Australian Journal of Crop Science 5 (2):169–74.
  • Mahmudi, J., S. Sharafi, M. Tanha, and R. Hassanzade. 2015. Effect of Zn and K elements on yield and yield components of rice (Oryza sativa L.) cv. Tarom Hashemi. International Journal of Farming and Allied Sciences 4 (1):1–5.
  • Manzoor, Z., T. H. Awan, M. Ahmad, M. Akhter, and F. A. Faiz. 2008. Effect of split application of potash on yield and yield related traits of basmati rice. Journal of Animal and Plant Sciences 18 (4):120–4.
  • Marschner, H. 1993. Mineral nutrition of higher plants. 2nd ed. Stuttgart, Germany: Elsevier.
  • Meena, G., and B. R. Maurya. 2017. Potentiality of potassium solubilizing bacteria on enhancing the growth, yield and nutrient acquisition on wheat (Triticum aestivum L.). International Journal of Current Microbiology and Applied Sciences 6 (4):2443–50. doi: 10.20546/ijcmas.2017.604.285.
  • Meena, V. S., S. K. Meena, J. P. Verma, A. Kumar, A. Aeron, P. K. Mishra, J. K. Bisht, A. Pattanayak, M. Naveed, and M. L. Dotaniya. 2017. Plant beneficial rhizospheric microorganism (PBRM) strategies to improve nutrients use efficiency: A review. Ecological Engineering 107:8–32. doi: 10.1016/j.ecoleng.2017.06.058.
  • Mehnaz, S., D. N. Baig, and G. Lazarovits. 2010. Genetic and phenotypic diversity of plant growth promoting rhizobacteria isolated from sugarcane plants growing in Pakistan. Journal of Microbiology and Biotechnology 20:1614–23. doi: 10.4014/jmb.1005.05014.
  • Kasai, M., K. Koide, and Y. Ichikawa. 2012. Effect of pot size on various characteristics related to photosynthetic matter production in soybean plants. International Journal of Agronomy 2012:7. doi: 10.1155/2012/751731.
  • Mishra, D. J., R. Singh, U. K. Mishra, and S. K. Shahi. 2013. Role of bio-fertilizer in organic agriculture: A review. Research Journal of Recent Sciences 2:39–41.
  • Nath, D., B. R. Maurya, and V. S. Meena. 2017. Documentation of five potassium- and phosphorus-solubilizing bacteria for their K and P-solubilization ability from various minerals. Biocatalysis and Agricultural Biotechnology 10:174–81. doi: 10.1016/j.bcab.2017.03.007.
  • Nematzadeh, G. A., M. Oladi, G. Kiani, A. Hajipour, and S. H. R. Hashemi. 2014. Introduction of new rice variety “pajohesh” via classical method with suitable physicochemical characteristics. Journal of Watershed Management Research 5 (10):122–7. (In Persian).
  • Ntanos, D., and S. Koutroubas. 2002. Dry matter and N accumulation and translocation for Indica and Japonica rice under Mediterranean conditions. Field Crops Research 74 (1):93–101. doi: 10.1016/S0378-4290(01)00203-9.
  • Pan, S. G., S. Q. Huang, J. Zhai, J. P. Wang, C. G. Cao, M. L. Cai, M. Zhan, and X. R. Tang. 2012. Effects of N management on yield and N uptake of rice in central China. Journal of Integrative Agriculture 11 (12):1993–2000. doi: 10.1016/S2095-3119(12)60456-0.
  • Pii, Y., L. Borruso, L. Brusetti, C. Crecchio, S. Cesco, and T. Mimmo. 2016. The interaction between iron nutrition, plant species and soil type shapes the rhizosphere microbiome. Plant Physiology and Biochemistry 99:39–48. doi: 10.1016/j.plaphy.2015.12.002.
  • Pii, Y., T. Mimmo, N. Tomasi, R. Terzano, S. Cesco, and C. Crecchio. 2015. Microbial interactions in the rhizosphere: Beneficial influences of plant growth promoting rhizobacteria on nutrient acquisition process. A review. Biology and Fertility of Soils 51 (4):403–15. doi: 10.1007/s00374-015-0996-1.
  • Pirdashti, H., Z. Tahmasebi Sarvestani, and M. Nasiri. 2003. Study of dry matter and nitrogen remobilization in different rice cultivars in different dates of transplanting. Iranian Journal of Pharmaceutical Sciences 5 (1):46–55. (In Persian).
  • Ranawake, A. L., and U. G. S. Amarasinghe. 2014. Relationship of yield and yield related traits of some traditional rice cultivars in Sri Lanka as described by correlation analysis. Journal of Scientific Research & Reports 3 (18):2395–2403.
  • Rodrigues, E. P., L. S. Rodrigues, A. L. M. de Oliveira, V. L. D. Baldani, K. R. D. Teixeira, S. Urquiaga, and V. M. Reis. 2008. Azospirillum amazonense inoculation: Effects on growth, yield and N2 fixation of rice (Oryza sativa L.). Plant and Soil 302 (1–2):249–61. doi: 10.1007/s11104-007-9476-1.
  • Santoro, M. V., L. R. Cappellari, W. Giordano, and E. Banchio. 2015. Plant growth-promoting effects of native Pseudomonas strains on Mentha piperita (peppermint): An in vitro study. Plant Biology 17 (6):1218–26. doi: 10.1111/plb.12351.
  • Santos, E. F., F. G. Macedo, B. J. Zanchim, M. A. Camacho, and J. Lavres. 2017. Macronutrients uptake rate and biomass partitioning during early growth of Jatropha plants. Revista Ciência Agronômica 48 (4):565–75. doi: 10.5935/1806-6690.20170066.
  • Satheeshkumar, P., and K. Saravanan. 2012. Genetic variability, correlation and path analysis in rice (Oryza sativa L.). International Journal of Current Research 4 (9):082–5.
  • Souza, R., A. Beneduzi, A. Ambrosini, P. B. Costa, J. Meyer, L. K. Vargas, R. Schoenfeld, and L. M. P. Passaglia. 2013. The effect of plant growth-promoting rhizobacteria on the growth of rice (Oryza sativa L.) cropped in southern Brazilian fields. Plant and Soil 366:585–603. doi: 10.1007/s11104-012-1430-1.
  • Tabassum, B., A. Khan, M. Tariq, M. Ramzan, M. S. Iqbal Khan, N. Shahid, and K. Aaliya. 2017. Bottlenecks in commercialisation and future prospects of PGPR. Applied Soil Ecology 121:102–17. doi: 10.1016/j.apsoil.2017.09.030.
  • Unger, I. M., A .C. Kennedy., and R. M. Muzika. 2009. Flooding effects on soil microbial communities. Applied Soil Ecology 42 (1):1–8.
  • Vries, M. P. C. 1980. How reliable are results of pot experiments? Communications in Soil Science and Plant Analysis 11 (9):895–902. doi: 10.1080/00103628009367090.
  • Wakeel, A., H. U. Rehman, M. U. Mubarak, A. I. Dar, and M. Farooq. 2017. Potash use in aerobic production system for basmati rice may expand its adaptability as an alternative to flooded rice production system. Journal of Soil Science and Plant Nutrition 17 (2):398–409. doi: 10.4067/S0718-95162017005000029.
  • White, P. J. 2012. Long-distance transport in the xylem and phloem. In Marschner’s mineral nutrition of higher plants, ed. P. Marschner, 3rd ed., 49–70. Berlin, Germany: Elsevier.
  • Yaghoubi Khanghahi, M., H. Pirdashti, H. Rahimian, G. A. Nematzadeh, and M. Ghajar Sepanlou. 2017. Potassium solubilising bacteria (KSB) isolated from rice paddy soil: From isolation, identification to K use efficiency. Symbiosis 77 (3):1–11. doi: 10.1007/s13199-017-0533-0.
  • Yoshida, S. 1981. Fundamentals of rice crop science. Los Baños, Philippines: The International Rice Research Institute, 269 pages.
  • Yousaf, M., J. Li, J. Lu, T. Ren, R. Cong, S. Fahad, and X. Li. 2017. Effects of fertilization on crop production and nutrient-supplying capacity under rice-oilseed rape rotation system. Scientific Reports 7:1270. doi: 10.1038/s41598-017-01412-0.

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